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T-Cell-Derived Nanovesicles for Cancer Immunotherapy

delete2021-07-08
delete54
PRE
AI
J
Jihye Hong
M
Mikyung Kang
M
Mungyo Jung
Y
Yun Young Lee
Y
Yongbum Cho
C
Cheesue Kim
S
Seuk Young Song
C
Chun Gwon Park
J
Junsang Doh
B
Byung‐Soo Kim *
DOI:10.1002/adma.202101110delete
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Abstract

Abstract

En 中文
Although T-cell therapy is a remarkable breakthrough in cancer immunotherapy, the therapeutic efficacy is limited for solid tumors. A major cause of the low efficacy is T-cell exhaustion by immunosuppressive mechanisms of solid tumors, which are mainly mediated by programmed death-ligand 1 (PD-L1) and transforming growth factor-beta (TGF-beta). Herein, T-cell-derived nanovesicles (TCNVs) produced by the serial extrusion of cytotoxic T cells through membranes with micro-/nanosized pores that inhibit T-cell exhaustion and exhibit antitumoral activity maintained in the immunosuppressive tumor microenvironment (TME) are presented. TCNVs, which have programmed cell death protein 1 and TGF-beta receptor on their surface, block PD-L1 on cancer cells and scavenge TGF-beta in the immunosuppressive TME, thereby preventing cytotoxic-T-cell exhaustion. In addition, TCNVs directly kill cancer cells via granzyme B delivery. TCNVs successfully suppress tumor growth in syngeneic-solid-tumor-bearing mice. Taken together, TCNV offers an effective cancer immunotherapy strategy to overcome the tumor's immunosuppressive mechanisms.
Keywords:
cancer
cytotoxic T cells
exhaustion
immunotherapy
nanovesicles
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Journal

Advanced Materials cover
Advanced Materials
IF:
26.8
Papers:
3.4W
Citations:
46.0W

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S
seoul national university (snu)
Scholars:
7.1W
Papers: 6.6W
Citations: 86
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